首页> 美国卫生研究院文献>Annals of Botany >Adaptive molecular evolution of the two-pore channel 1 gene TPC1 in the karst-adapted genus Primulina (Gesneriaceae)
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Adaptive molecular evolution of the two-pore channel 1 gene TPC1 in the karst-adapted genus Primulina (Gesneriaceae)

机译:适应岩溶的Primulina(Gesneriaceae)双孔通道1基因TPC1的自适应分子进化

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摘要

>Background and Aims Limestone karst areas possess high floral diversity and endemism. The genus Primulina, which contributes to the unique calcicole flora, has high species richness and exhibit specific soil-based habitat associations that are mainly distributed on calcareous karst soils. The adaptive molecular evolutionary mechanism of the genus to karst calcium-rich environments is still not well understood. The Ca2+-permeable channel TPC1 was used in this study to test whether its gene is involved in the local adaptation of Primulina to karst high-calcium soil environments.>Methods Specific amplification and sequencing primers were designed and used to amplify the full-length coding sequences of TPC1 from cDNA of 76 Primulina species. The sequence alignment without recombination and the corresponding reconstructed phylogeny tree were used in molecular evolutionary analyses at the nucleic acid level and amino acid level, respectively. Finally, the identified sites under positive selection were labelled on the predicted secondary structure of TPC1.>Key Results Seventy-six full-length coding sequences of Primulina TPC1 were obtained. The length of the sequences varied between 2220 and 2286 bp and the insertion/deletion was located at the 5′ end of the sequences. No signal of substitution saturation was detected in the sequences, while significant recombination breakpoints were detected. The molecular evolutionary analyses showed that TPC1 was dominated by purifying selection and the selective pressures were not significantly different among species lineages. However, significant signals of positive selection were detected at both TPC1 codon level and amino acid level, and five sites under positive selective pressure were identified by at least three different methods.>Conclusions The Ca2+-permeable channel TPC1 may be involved in the local adaptation of Primulina to karst Ca2+-rich environments. Different species lineages suffered similar selective pressure associated with calcium in karst environments, and episodic diversifying selection at a few sites may play a major role in the molecular evolution of Primulina TPC1.
机译:>背景和目标石灰岩喀斯特地区具有较高的花卉多样性和特有性。 Primulina属有助于形成独特的硅藻区,具有丰富的物种丰富性,并具有特定的基于土壤的生境关联,主要分布在钙质喀斯特土壤上。该属对喀斯特富含钙的环境的适应性分子进化机制仍未很好理解。本研究使用Ca 2 + 渗透通道TPC1来测试其基因是否参与报春花对喀斯特高钙土环境的局部适应。>方法设计了扩增和测序引物,并将其用于从76种报春花属物种的cDNA扩增TPC1的全长编码序列。没有重组的序列比对和相应的重构系统树分别在核酸水平和氨基酸水平用于分子进化分析。最后,在阳性选择下将鉴定出的位点标记在TPC1的预测二级结构上。>主要结果获得报春花TPC1的76条全长编码序列。序列的长度在2220和2286bp之间变化,并且插入/缺失位于序列的5'末端。在序列中未检测到取代饱和的信号,而检测到显着的重组断点。分子进化分析表明,TPC1以纯化选择为主,种系间的选择压力无明显差异。然而,在TPC1密码子水平和氨基酸水平均检测到明显的正选择信号,并且通过至少三种不同的方法鉴定了在正选择压力下的五个位点。>结论 Ca 2+ 可渗透通道TPC1可能参与了报春花对富含Ca 2 + 的岩溶环境的局部适应。在喀斯特环境中,不同物种的谱系遭受与钙相关的相似选择压力,并且在几个位点进行的情景多样化选择可能在樱草属TPC1的分子进化中起主要作用。

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